Institute of Chemistry, University of Campinas-UNICAMP, Campinas SP, Brazil.
Langmuir. 2013 Jan 22;29(3):892-901. doi: 10.1021/la304322w. Epub 2013 Jan 9.
Top and bottom surfaces of polyethylene (PE) films exposed to corona discharge display large and opposite electrostatic potentials, forming an electric bilayer in agreement with recent and unexpected findings from Zhiqiang et al. Water wetting, chemical composition and roughness of the two surfaces are different. Surprisingly, the bottom surface, opposite to the corona electrode is charged but it is not oxidized, neither is it wetted with water. Moreover, its morphology is unaltered by charging, while the hydrophilic top surface is much rougher with protruding islands that are the result of oxidation followed by phase separation and polymer-polymer dewetting. Common liquids extract the oxidized, hydrophilic material formed at the upper surface, a result that explains the well-known sensitivity of adhesive joints made using corona-treated thermoplastics to liquids, especially water. These results show that poling the surface closer to the corona electrode triggers another but different charge build-up process at the opposite surface. The outcome is another poled PE surface showing high potential but with unchanged chemical composition, morphology and wetting behavior as the pristine surface, thus opening new possibilities for surface engineering.
经过电晕放电处理的聚乙烯(PE)薄膜的顶面和底面会显示出较大且相反的静电势,形成一个电双层,这与 Zhiqiang 等人最近出人意料的发现一致。这两个表面的润湿性、化学组成和粗糙度是不同的。令人惊讶的是,与电晕电极相对的底面虽然带有电荷,但它没有被氧化,也没有被水润湿。此外,充电不会改变其形貌,而亲水的顶面则更加粗糙,有突出的岛屿,这是氧化、相分离和聚合物-聚合物去润湿的结果。常见的液体提取在上表面形成的氧化、亲水材料,这一结果解释了使用电晕处理热塑性塑料制成的胶接接头对液体(尤其是水)的高敏感性。这些结果表明,在更靠近电晕电极的表面极化会在相反的表面触发另一个但不同的电荷积累过程。结果是另一个极化的 PE 表面显示出高电势,但化学组成、形貌和润湿性与原始表面相同,从而为表面工程开辟了新的可能性。